Chinese Journal of Lasers, Volume. 42, Issue 4, 405005(2015)
Radio-Frequency Transfer over a Long-Distance Fiber Link Based on Analog Phase Shift Compensation
[1] [1] J Levine. A review of time and frequency transfer methods[J]. Metrologia, 2008, 45(6): 162-174.
[2] [2] L Sliwczynski, P Krehlik, M Lipinski. Optical fibers in time and frequency transfer[J]. Measurement Science and Technology, 2010, 21(7): 075302.
[3] [3] Li Delong, Cheng Qingming, Zhang Baofu, et al.. Research on the impact of optical fiber link delay fluctuation on frequency transfer stability[J]. Laser & Optoelectronics Progress, 2014, 51(1): 010602.
[4] [4] L S Ma, P Jungner, J Ye, et al.. Delivering the same optical frequency at two places: Accurate cancellation of phase noise introduced by an optical fiber or other time-varying path [J]. Opt Lett, 1994, 19(21): 1777-1779.
[5] [5] O Lopez, A Amy-Klein, C Daussy, et al.. 86-km optical link with a resolution of 2×10- 18 for RF frequency transfer[J]. European Physical D, 2008, 48(1): 35-41.
[6] [6] O Lopez, A Amy-Klein, M Lours, et al.. High-resolution microwave frequency dissemination on an 86-km urban optical link[J]. Appl Phys B, 2010, 98(4): 723-727.
[7] [7] G Marra, R Slavík, H S Margolis, et al.. High-resolution microwave frequency transfer over an 86-km-long optical fiber network using a mode-locked laser[J]. Opt Lett, 2011, 36(4): 511-513.
[8] [8] Chen Ruihao, Wu Guiling, Zou Weiwen, et al.. Optical phase compensation system design for frequency transferover optical fiber[J]. Optical Communication Technology, 2014, 4: 1-4.
[9] [9] B Wang, C Gao, W L Chen, et al.. Precise and continuous time and frequency synchronisation at 5×10-19 accuracy level[J]. Scientific Reports, 2012, 2: 556.
[10] [10] L S′ liwczynski , P Krehlik, A Czubla, et al.. Dissemination of time and RF frequency via a stabilized fibre optic link over a distance of 420 km[J]. Metrologia, 2013, 50(2): 133-145.
[11] [11] M Kumagai, M Fujieda, S Nagano, et al.. Stable radio frequency transfer in 114 km urban optical fiber link[J]. Opt Lett, 2009, 34(19): 2949-2951.
[12] [12] M Amemiya, M Imae, Y Fujii, et al.. System for precise dissemination of frequency standard via optical fiber[J]. Electronics and Communications in Japan, 2012, 95(3): 45-54.
[13] [13] Yabai He, B J Orr, K G H Baldwin, et al.. Stable radio-frequency transfer over optical fiber by phase-conjugate frequency mixing [J]. Opt Express, 2013, 21(16): 18754-18764.
[14] [14] B Ning, P Du, D Hou, et al.. Phase fluctuation compensation for long-term transfer of stable radio frequency over fiber link[J]. Opt Express, 2012, 20(27): 28447-28454.
[15] [15] B Ning, D Hou, T Zheng, et al.. Hybrid analog-digital fiber-based radio-frequency signal distribution[J]. IEEE Photon Technol Lett, 2013, 25(16): 1551-1554.
[16] [16] Li Delong, Lu Lin, Zhang Baofu, et al.. New microwave frequency dissemination method over optical fiber based on the phase fluctuation compensated at remote sites[J]. Acta Optica Sinica, 2014, 34(7): 0706001.
[17] [17] Hua Yun, Gui Youzhen, Yang Fei, et al.. Analysis of repeater for time and frequency dissemination via optical fiber[J]. Chinese J Lasers, 2012, 39(9): 0905002.
[18] [18] Chang Le, Dong Yi, Sun Dongning, et al.. Influence and suppression of coherent Rayleigh noise in fiber-optical-based phasestabilized microwave-frequency transmission system[J]. Acta Optica Sinica, 2012, 32(5): 0506004.
[19] [19] He Zhiqiang. Parameters Tuning of PID Controller and Its Application[D]. Hangzhou: Zhejiang University, 2005: 1-35.
Get Citation
Copy Citation Text
Ren Lixia, Zhang Shuangyou, Qian Cheng, Zhao Jianye. Radio-Frequency Transfer over a Long-Distance Fiber Link Based on Analog Phase Shift Compensation[J]. Chinese Journal of Lasers, 2015, 42(4): 405005
Category: Optical communication
Received: Oct. 20, 2014
Accepted: --
Published Online: Apr. 8, 2015
The Author Email: Lixia Ren (ren_lixia@126.com)